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Functionalized polymer waveguide optical switching devices integrated with visible optical amplifiers based on an organic gain material

机译:官能化聚合物波导光学开关装置与基于有机增益材料的可见光放大器集成

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摘要

In this work, polymer waveguide based optical switching devices integrated with visible optical amplifying waveguides based on an organic gain material are designed and fabricated. The gain compound is a red emissive oligomer, with good dispersibility in organic polymer matrices. Optical characteristics and thermal stabilities of the active polymer waveguide core and cladding materials are analyzed. Optical gain of the amplifier operating at 650 nm red signal wavelength with 0.1 mW input power is found to be over 3.5 dB under only 1.6 mW pumping power with 532 nm green excitation light. The on-off response time of the integrated thermo-optic switch applied is measured to be 600 mu s, with switching extinction ratio of 20 dB and electric switching power of 18.5 mW. The integrated switching device capable of optical gain will be suitable for applications to optical communications at the visible wavelength range involving plastic optical fiber systems.
机译:在这项工作中,设计并制造了基于基于有机增益材料的可见光放大波导的基于聚合物波导的光学开关装置。 增益化合物是红色发射低聚物,具有良好的有机聚合物基质中的分散性。 分析了活性聚合物波导芯和包层材料的光学特性和热稳定性。 在650nm红色信号波长下,放大器的光学增益,含有0.1 MW的输入功率的350nm输入功率仅为3.5 dB,仅为1.6 MW泵浦电源,采用532纳米绿色激发光。 施加的集成热光开关的开关响应时间测量为600μs,开关消光比为20dB,电源开关功率为18.5 mW。 能够光学增益的集成开关装置适用于应用于涉及塑料光纤系统的可见波长范围的光通信。

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